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    • 2. 发明专利
    • Method for laying electrode and structure thereof
    • 用于层叠电极及其结构的方法
    • JP2011198309A
    • 2011-10-06
    • JP2010067154
    • 2010-03-24
    • li-li Fan莉立 范
    • FAN LI-LI
    • G06F3/041
    • PROBLEM TO BE SOLVED: To provide a method for laying an electrode, by which a conductive wire arranged on the groove of a bridge is broken in a manufacturing process and connection is performed by arranging the conductive wire of power at a position with the height of the insulating unit of the bridge and lower than the grooves of the bridge, and also to provide the structure of the method for laying the electrode.SOLUTION: The structure includes: a substrate; transparent conductive layers formed on the substrate; a polyimide layer formed on the substrate; a conductive layer formed on the substrate; and protective layers formed on the substrate. The transparent conductive layers include a plurality of patterns adjacently. The polyimide layer includes the insulating unit having a plurality of grooves, to be used to perform connection horizontally over the patterns. The conductive layer includes a plurality of electrical conductive wires arranged to respectively correspond to the grooves, wherein at least one or more electrical conductive wires of the conductive layer are formed by excessive exposure or excessive development via an optical security type optical mask. The protective layers improve a translucency ratio and are used to protect the substrate, the transparent conductive layers, the polyimide layer, and the conductive layer.
    • 要解决的问题:提供一种用于铺设电极的方法,其中布置在桥的槽上的导线在制造过程中断开,并且通过将电力导线布置在高度为 桥的绝缘单元和桥的凹槽,并且还提供了用于铺设电极的方法的结构。解决方案:结构包括:基板; 形成在基板上的透明导电层; 形成在所述基板上的聚酰亚胺层; 形成在所述基板上的导电层; 以及形成在基板上的保护层。 透明导电层包括相邻的多个图案。 聚酰亚胺层包括具有多个凹槽的绝缘单元,用于在图案上水平地进行连接。 导电层包括分别对应于凹槽的多个导电线,其中通过光学安全型光学掩模的过度曝光或过度显影形成导电层的至少一个或多个导电线。 保护层提高半透明比,并用于保护基板,透明导电层,聚酰亚胺层和导电层。
    • 3. 发明公开
    • METHOD AND EQUIPMENT FOR CIRCULATING COOLED REGENERATED CATALYST
    • VERFAHREN UNDAUSRÜSTUNGZUR ZIRKULATION EINESGEKÜHLTENREGENERIERTEN KATALYSATORS
    • EP2535395A1
    • 2012-12-19
    • EP10845485.1
    • 2010-02-11
    • Li, Li
    • LI, QunzhuLI, Li
    • C10G11/18B01J38/12
    • B01J38/30B01J38/32C10G11/18C10G11/182C10G2300/4093
    • A method for circulating a cooled regenerated catalyst comprises the following steps: a regenerated catalyst derived from a regenerator(5) is cooled to 200-720°C by a catalyst cooler (8A), which either directly enters into a riser reactor (2) without mixing with hot regenerated catalyst, or enters the same after mixing with another portion of uncooled hot regenerated catalyst and thereby obtaining a hybrid regenerated catalyst with its temperature lower than that of the regenerator; a contact reaction between a hydrocarbon raw materials and the catalyst is performed in the riser reactor (2); the reaction product is introduced into a settling vessel (1) to separated the catalyst and oil gas; the separated catalyst ready for regeneration is stream-stripped in a stream stripping phase (1A) and enters the regenerator (5) for regeneration through charring; after cooling, the regenerated catalyst returns to the riser reactor (2) for recycling.
    • 循环冷却再生催化剂的方法包括以下步骤:将来自再生器(5)的再生催化剂通过催化剂冷却器(8A)冷却至200-720℃,催化剂冷却器(8A)直接进入提升管反应器(2) 不与热再生催化剂混合,或者与另一部分未冷却的热再生催化剂混合后进入,从而得到其温度低于再生器的温度的混合再生催化剂; 烃原料和催化剂之间的接触反应在提升管反应器(2)中进行; 将反应产物引入沉降容器(1)以分离催化剂和油气; 准备再生的分离的催化剂在流汽提阶段(1A)中流动并进入再生器(5)以通过炭化进行再生; 冷却后,再生的催化剂返回到提升管反应器(2)以进行再循环。